个人电动出行增程装置的研制

Mohamad Mirza Sadiq, G. M. Abro, Ahmad Zaid Syakir Mohd Yazsid, S. Zulkifli
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引用次数: 0

摘要

采用电动汽车的最大障碍之一是车载储能系统每次充满电的行驶里程有限。这个问题被称为里程焦虑——人们不愿意依赖电动汽车,原因有很多,比如储存的能量用完,缺乏充电设施,充电时间长。为解决这一问题进行了大量研究;一些人建议将传统引擎和电动引擎结合起来,以达到两全其美的效果,另一些人建议战略性地设置充电站,还有一些人建议使用算法来确定车辆的最佳路线。这项研究试图实现一种简单的电流限制机制,用于现有的个人电动交通(PEM)设备,如电动滑板车,它将跟踪其车载电池状态(SoC),并产生一个新的信号来控制提供给电机的电流水平。这有助于限制电池的能量消耗,从而延长滑板车的行驶里程。本研究利用MATLAB-Simulink软件,模拟了一个PEM及其限流机制。本研究利用Arduino电路,接入现有的电动滑板车,记录和分析用户界面与电机控制器之间的串行通信,限制电机的电流,实现更长的续航里程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of Range Enhancement Device for Personal Electric Mobility
One of the biggest obstacles to the adoption of electric vehicles is their limited operating range per full charge of the onboard energy storage. This issue is known as range anxiety - people are reluctant to depend on EVs due to myriad reasons such as running out of stored energy, lack of charging facilities and the time it takes to charge. Much research has been carried out to address this concern; some propose combining conventional and electric engines for the best of both worlds, others propose strategically placing charging stations, and still others propose using algorithms to determine the best route for the vehicle. This research attempts to implement a simple current limiting mechanism for existing personal electric mobility (PEM) equipment such as electric scooters, which will track its onboard battery state-of-charge (SoC) and produce a new signal that controls the level of current provided to the motor. This can help to limit energy depletion from the battery and thus extend the scooter’s range. By using MATLAB-Simulink software, this study simulates a PEM and the current limiting mechanism. With the use of Arduino circuitry, this research involves tapping into the existing electric scooter to record and analyze serial communication between the user interface and motor controller, to limit the motor’s current and achieve longer range.
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